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Pinocembrin from Penthorum chinense Pursh suppresses hepatic stellate cells activation through a unified SIRT3-TGF-beta-Smad signaling pathway Journal article
TOXICOLOGY AND APPLIED PHARMACOLOGY, 2018,Volume: 341,Page: 38-50
Authors:  Zhou, Fayang;  Wang, Anqi;  Li, Dan;  Wang, Yitao;  Lin, Ligen
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Liver Fibrosis  Hepatic Stellate Cells  Penthorum Chinense Pursh  Pinocembrin  Sma- And Mad-related Proteins  Silent Mating Type Information Regulation 2 Homolog 3  
Discovery and preliminary SAR of 14-aryloxy-andrographolide derivatives as antibacterial agents with immunosuppressant activity Journal article
RSC ADVANCES, 2018,Volume: 8,Issue: 17,Page: 9440-9456
Authors:  Li, Feng;  Li, Xiao-Min;  Sheng, Dekuan;  Chen, Shao-Ru;  Nie, Xin;  Liu, Zhuyun;  Wang, Decai;  Zhao, Qi;  Wang, Yitao;  Wang, Ying;  Zhou, Guo-Chun
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Saikosaponin a and its epimer saikosaponin d exhibit anti-inflammatory activity by suppressing activation of NF-κB signaling pathway Journal article
International Immunopharmacology, 2012,Volume: 14,Issue: 1,Page: 121
Authors:  Lu C.-N.;  Yuan Z.-G.;  Zhang X.-L.;  Yan R.;  Zhao Y.-Q.;  Liao M.;  Chen J.-X.
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Inflammation  Nf-κb  Raw264.7 Cell  Saikosaponin a  Saikosaponin d